In the world of anti-aging medicine, scientists are currently focusing on one compound:
NAD+ (nicotinamide adenine dinucleotide). This coenzyme is absolutely crucial for the life of every cell in our body, including skin cells.

What is NAD+ and why do its levels drop?
NAD+ is responsible for the production of cellular energy (ATP) in mitochondria and for repairing damaged DNA. Unfortunately, its levels decline dramatically with age. Around age 50, we have half as much of it as we did in our youth. The result? Cells lose energy for regeneration, collagen production slows, and skin sags and ages.
The role of NMN as a precursor
The NAD+ molecule is too large to be administered directly in a cream or tablet – it won’t cross biological barriers. Therefore, modern biotechnology uses
NMN (nicotinamide mononucleotide). This smaller precursor easily penetrates cells, where it immediately converts into live NAD+.
What do NAD+ and NMN do for the skin?
Cellular reactivation: They give cells an “energy boost”, forcing them to intensively produce young collagen and elastin.
Strengthening skin immunity: Protects cells against oxidative stress, UV rays and environmental pollutants.
Deep Reconstruction: Helps restore skin’s lost density, elasticity, and natural, healthy tone. This isn’t just about masking wrinkles—it’s about biologically delaying the cellular aging process.
Skin aging results from a decline in the energy and regeneration coenzyme, NAD+. Because its molecule is too large, modern skincare uses its smaller precursor, NMN . Thanks to biotechnology, it penetrates the epidermal barrier, renewing NAD+ stores in cells, and forcing them to produce new collagen, truly rejuvenating the skin from within.


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